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An Environmentally-Friendly Geotechnical Approach for Soil Erosion Reduction Using Microbial Biopolymers

机译:使用微生物生物聚合物的土壤侵蚀降低的环保岩土工程方法

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Global warming and unsustainable land development are known to be major triggers promoting geotechnical hazards such as farmland and coastal erosion, yellow dust, and desertification. New forestry practices, such as encouraging forests in dry land areas, are simple measures that can remove more carbon from the atmosphere and prevent the spread of deserts. Numerous global agencies and companies are thus contributing to anti-desertification movements. However, tree planting alone is not an ideal solution given that it takes approximately 2~3 years for stabilization. It is thus imperative to develop innovative technology that can promote vegetation growth and improve soil erosion resistance. In this study, a unique soil treatment and anti-desertification method is developed using environmentally friendly biogenic biopolymers. Biopolymers can effectively strengthen soil and improve durability. In particular, anionic-hydrophilic biopolymers delay water evaporation, thereby retaining a higher soil moisture condition compared to untreated soil. For technical verification, series of laboratory investigations (i.e. water erosion test, seed germination and growth,) were performed by applying target biopolymers to soil specimens. The results indicate that environmentally-friendly biopolymer treatment is highly effective in improving both vegetation growth (3 times faster) and soil erosion resistance (less than 2%), compared to a untreated condition.
机译:已知全球变暖和不可持续的土地开发是促进农田和沿海侵蚀,黄尘和荒漠化等岩土危害的主要触发器。新的林业实践,如令人鼓舞的干旱土地上的森林,是一种简单的措施,可以从大气中去除更多的碳,防止沙漠的传播。因此,众多的全球机构和公司都为反荒漠化的动作做出了贡献。然而,单独种植的树不是一个理想的解决方案,因为稳定需要大约2〜3年。因此,它必须开发创新技术,可以促进植被生长,提高土壤侵蚀性。在这项研究中,使用环保的生物聚合体开发了独特的土壤处理和抗荒漠化方法。生物聚合物可以有效地加强土壤,提高耐久性。特别是阴离子 - 亲水性生物聚合物延迟水蒸发,与未处理的土壤相比,保持更高的土壤水分状况。对于技术验证,通过将靶生物聚合物施加到土样本来进行一系列实验室调查(即水腐蚀试验,种子萌发和生长)。结果表明,与未处理的病症相比,环境友好型生物聚合物治疗在改善植被生长(3倍时)和土壤侵蚀抗性(小于2%)方面非常有效。

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